Selection of radiolabeled gastrin analogs for peptide receptor-targeted radionuclide therapy

Stephen J Mather1, Andrew J McKenzie, Jane K Sosabowski

  • 1Department of Nuclear Medicine, St. Bartholomew's Hospital, London, United Kingdom. stephen.mather@cancer.org.uk

Abstract

Insights

Researchers developed a novel peptide targeting the gastrin/cholecystokinin-2 (CCK-2) receptor for improved cancer imaging and therapy. This new peptide shows enhanced tumor uptake and reduced kidney retention compared to existing candidates.

Area of Science:

  • Biomedical research
  • Radiopharmaceutical chemistry
  • Oncology

Background:

  • The gastrin/cholecystokinin-2 (CCK-2) receptor is a potential target for radionuclide-based cancer diagnostics and therapeutics.
  • Existing radiolabeled peptides targeting the CCK-2 receptor exhibit suboptimal tumor uptake or excessive renal accumulation.

Purpose of the Study:

  • To identify and characterize a novel peptide with superior tumor-to-kidney pharmacodynamics for CCK-2 receptor-targeted applications.
  • To overcome the limitations of current peptide candidates in terms of tumor targeting and off-target organ retention.

Main Methods:

  • A library of 34 peptide-chelator compounds based on CCK-8 and minigastrin analogs was synthesized.
  • Peptides were radiolabeled with Indium-111 (111In) with high efficiency (>90%).
  • In vivo screening in pancreatic xenograft mouse models (AR42J) assessed tumor and kidney uptake, followed by detailed biodistribution of the lead candidate.

Main Results:

  • Minigastrin analogs with pentaglutamate sequences showed high tumor uptake but also significant renal retention.
  • CCK analogs demonstrated low uptake in both tumors and kidneys.
  • Modifications including pentaglutamate deletion and histidine insertion significantly improved the tumor-to-kidney ratio.
  • The DOTA-HHEAYGWMDF-NH(2) peptide exhibited the highest tumor-to-kidney ratio, with saturable uptake in target organs and minimal off-target accumulation.

Conclusions:

  • The DOTA-HHEAYGWMDF-NH(2) peptide demonstrates promising characteristics for CCK-2 receptor-targeted radionuclide therapy.
  • This peptide warrants further clinical investigation for its therapeutic and diagnostic potential.